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核因子(红系衍生2)样2(NRF2)药物研发:通过与kelch样ECH相关蛋白1(KEAP1)可逆结合来开发NRF2激活剂的生化工具箱

Nuclear factor (erythroid-derived 2)-like 2 (NRF2) drug discovery: Biochemical toolbox to develop NRF2 activators by reversible binding of Kelch-like ECH-associated protein 1 (KEAP1).

作者信息

Bresciani Alberto, Missineo Antonino, Gallo Mariana, Cerretani Mauro, Fezzardi Paola, Tomei Licia, Cicero Daniel Oscar, Altamura Sergio, Santoprete Alessia, Ingenito Raffaele, Bianchi Elisabetta, Pacifici Robert, Dominguez Celia, Munoz-Sanjuan Ignacio, Harper Steven, Toledo-Sherman Leticia, Park Larry C

机构信息

IRBM Science Park S.p.A., Pomezia, Roma, Italy.

IRBM Science Park S.p.A., Pomezia, Roma, Italy; Dipartimento di Scienze e Tecnologie Chimiche, Università di Roma "Tor Vergata", Roma, Italy.

出版信息

Arch Biochem Biophys. 2017 Oct 1;631:31-41. doi: 10.1016/j.abb.2017.08.003. Epub 2017 Aug 8.

Abstract

Mechanisms that activate innate antioxidant responses, as a way to mitigate oxidative stress at the site of action, hold much therapeutic potential in diseases, such as Parkinson's disease, Alzheimer's disease and Huntington's disease, where the use of antioxidants as monotherapy has not yielded positive results. The nuclear factor NRF2 is a transcription factor whose activity upregulates the expression of cell detoxifying enzymes in response to oxidative stress. NRF2 levels are modulated by KEAP1, a sensor of oxidative stress. KEAP1 binds NRF2 and facilitates its ubiquitination and subsequent degradation. Recently, compounds that reversibly disrupt the NRF2-KEAP1 interaction have been described, opening the field to a new era of safer NRF2 activators. This paper describes a set of new, robust and informative biochemical assays that enable the selection and optimization of non-covalent KEAP1 binders. These include a time-resolved fluorescence resonance energy transfer (TR-FRET) primary assay with high modularity and robustness, a surface plasmon resonance (SPR) based KEAP1 direct binding assay that enables the quantification and analysis of full kinetic binding parameters and finally a H-N heteronuclear single quantum coherence (HSQC) NMR assay suited to study the interaction surface of KEAP1 with residue-specific information to validate the interaction of ligands in the KEAP1 binding site.

摘要

激活先天性抗氧化反应的机制,作为减轻作用部位氧化应激的一种方式,在帕金森病、阿尔茨海默病和亨廷顿病等疾病中具有很大的治疗潜力,在这些疾病中,使用抗氧化剂作为单一疗法并未产生积极效果。核因子NRF2是一种转录因子,其活性会在氧化应激反应中上调细胞解毒酶的表达。NRF2水平受KEAP1调节,KEAP1是一种氧化应激传感器。KEAP1与NRF2结合并促进其泛素化及随后的降解。最近,已经描述了可逆地破坏NRF2-KEAP1相互作用的化合物,为更安全的NRF2激活剂的新时代开辟了领域。本文描述了一组新的、强大且信息丰富的生化测定方法,可用于非共价KEAP1结合剂的筛选和优化。这些方法包括具有高模块性和稳健性的时间分辨荧光共振能量转移(TR-FRET)初步测定、基于表面等离子体共振(SPR)的KEAP1直接结合测定,该测定能够对完整的动力学结合参数进行定量和分析,以及最后一种适用于研究KEAP1相互作用表面并具有残基特异性信息以验证配体在KEAP1结合位点相互作用的氢-氮异核单量子相干(HSQC)核磁共振测定。

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